- Drop height
- 1m
- Bounce height
- 0.6m
0.7746
Open with these values0.7746e (0 to 1)
Result: 0.7746 e (0 to 1)Drop the ball from rest, measure how high it comes back, and take the square root of the ratio. A ball that returns to half its drop height has e ≈ 0.71, not 0.5 — the heights track energy while e compares speeds. The number is dimensionless and runs from 0 to 1.
0.7746
Open with these values0.7071
Open with these values0.7746
Open with these valuese = √(h ÷ H)
| Drop, bounce | What it is | e |
|---|---|---|
| 1, 0 | A beanbag — no rebound at all | 0 |
| 1, 0.5 | Back to half the drop height | 0.7071 |
| 1, 0.6 | About a tennis ball on a hard court | 0.7746 |
| 1, 1 | A perfectly elastic bounce | 1 |
| 1.5, 0.9 | The same ratio from a greater height | 0.7746 |
| 2, 0.5 | Back to a quarter of the drop height | 0.5 |
Drop the object from rest, measure the bounce height, and take the square root of bounce divided by drop: e = √(h ÷ H). Both heights must use the same unit — 0.6 m back from 1 m gives √0.6 ≈ 0.7746.
A dimensionless measure of how bouncy a collision is, the ratio of separation speed to approach speed. It runs from 0, a dead impact with no rebound, to 1, a perfectly elastic bounce that loses no energy. Every real material sits in between.
Because the heights track energy while e compares speeds, and speed goes with the square root of height. That is why a ball returning to half its drop height has e ≈ 0.71 rather than 0.5.
It depends on the pair of surfaces, not on the ball alone. A superball is around 0.9, a basketball about 0.75, a tennis ball near 0.7 and a baseball closer to 0.5. Clay or a beanbag sits near 0.
Not in a passive bounce — the object cannot gain energy, so a result above 1 means the measurement or the units are wrong. Check that both heights use the same unit and that the ball was released from rest, not thrown.
No. The same g appears in the fall and in the rebound and cancels out, so the drop test needs no value for it. The identical ball and floor would give the same e on the Moon.
Information, not professional advice.
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